A vehicle body structure having a side roof rail, a B-pillar and a bracket. The side roof rail has an inboard surface. The B-pillar has an upper end portion that overlays a portion of the inboard surface of the roof rail. The B-pillar extends downward from the roof rail. The bracket has a first portion and a second portion. The first portion is fixedly attached to the upper end portion of the B-pillar. The bracket further has a first rib and a second rib spaced apart from the first rib. The first rib and the second rib extend from the first portion of the bracket upward toward the second portion of the bracket. The first portion of the bracket further defines a slot located between the first rib and the second rib.
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15. A vehicle body structure, comprising:
a side roof rail having an inboard surface extending in a vehicle longitudinal direction;
a B-pillar having an upper end portion that overlays a portion of the inboard surface of the roof rail, the B-pillar extending downward from the roof rail;
a bracket having a first portion, a center portion and a second portion that are angularly offset from one another, the first portion being fixedly attached to the upper end portion of the B-pillar, the center portion of the bracket includes bent portions, such that in response to side impact forces, the center portion of the bracket deforms by folding along the bent portions collapsing with accordion bellows-like movement; and
a roof bow extending laterally inboard from roof rail and is fixedly attached to the second portion of the bracket.
1. A vehicle body structure, comprising:
a side roof rail having an inboard surface extending in a vehicle longitudinal direction;
a roof bow extending in vehicle inboard and outboard directions toward the side roof rail;
a B-pillar having an upper end portion that overlays a portion of the inboard surface of the roof rail, the B-pillar extending downward from the roof rail; and
a bracket having a first portion and a second portion, the first portion being fixedly attached to the upper end portion of the B-pillar, the second portion being fixedly attached to an outboard end of the roof bow such that the roof bow is spaced apart from the side roof rail and the B-pillar, the bracket further having a first rib, and a second rib spaced apart from the first rib, the first rib and the second rib extending from the first portion of the bracket upward toward the second portion of the bracket, the first portion of the bracket further defining a slot located between the first rib and the second rib.
9. A vehicle body structure, comprising:
a side roof rail having an inboard surface extending in a vehicle longitudinal direction;
a B-pillar having an upper end portion that overlays and is attached to a portion of the inboard surface of the side roof rail, the B-pillar extending downward from the roof rail;
a bracket having a first portion, a center portion and a second portion, the first portion being fixedly attached to an inboard surface of the upper end of the B-pillar, the second portion of the bracket extending inboard of the side roof rail and having two ribs that extend in an outboard direction along a distal end of the second portion, the center portion of the bracket includes bent portions, such that in response to side impact forces, the center portion of the bracket deforms by folding along the bent portions collapsing with accordion bellows-like movement; and
a roof bow having a pair of ribs that overlay but do not mate with the two ribs of second portion of the bracket, the roof bow extending laterally inboard from the bracket and is fixedly attached to the second portion of the bracket.
2. The vehicle body structure according to
the first portion of the bracket is fixedly attached to the inboard surface of the side roof rail.
3. The vehicle body structure according to
the slot is dimensioned to provide a predetermined rigidity to the bracket in response to side impacting forces.
4. The vehicle body structure according to
the first portion and the second portion of the bracket are angularly offset from one another.
5. The vehicle body structure according to
the roof bow is attached to the second portion of the bracket by mechanical fasteners.
6. The vehicle body structure according to
the first portion is further fixedly attached to the inboard surface of the side roof rail.
7. The vehicle body structure according to
the first portion of the bracket is fixedly attached to the inboard surface of the side roof rail via a single weld.
8. The vehicle body structure according to
the bracket has two ribs outboard from a distal end of the second portion, and
the roof bow includes a pair of ribs that overlay but do not mate with the two ribs of second portion of the bracket.
10. The vehicle body structure according to
the first portion of the bracket overlays and is welded to the upper end portion of the B-pillar.
11. The vehicle body structure according to
the first portion and the second portion of the bracket are angularly offset from one another.
12. The vehicle body structure according to
the center portion of the bracket is located between the first portion and the second portion, the center portion being fixed to the side roof rail by a single weld.
13. The vehicle body structure according to
the bracket has a first rib and a second rib spaced apart from the first rib, the first rib and the second rib extending from the first portion of the bracket upward toward the second portion of the bracket, with a slot defined between the first rib and the second rib, the slot being dimensioned to provide a predetermined rigidity to the bracket in response to side impacting forces.
14. The vehicle body structure according to
the center portion of the bracket includes bent portions, such that in response to the side impact forces, the center portion of the bracket deforms by folding along the bent portions collapsing with accordion bellows-like movement.
16. The vehicle body structure according to
the bracket has a first rib, and a second rib spaced apart from the first rib, the first rib and the second rib extending from the first portion of the bracket upward toward the second portion of the bracket with a slot defined between the first rib and the second rib, the slot being dimensioned to provide a predetermined rigidity to the bracket in response to the side impacting forces.
17. The vehicle body structure according to
the roof bow attached to the second portion of the bracket by mechanical fasteners.
18. The vehicle body structure according to
the first portion of the bracket is fixedly attached to the upper end portion of the B-pillar and the center portion is attached to the side roof rail by a single weld.
19. The vehicle body structure according to
the bracket includes a center portion having bent portions, such that in response to side impact forces, the center portion of the bracket deforms by folding along the bent portions collapsing with accordion bellows-like movement.
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The present invention generally relates to vehicle body structure. More specifically, the present invention relates to a vehicle body structure where a side roof rail, a B-pillar, a roof bow and a bracket intersect and connect to one another with attachments between the bracket and the roof bow being more numerous than attachments between the side roof rail and the bracket.
Vehicle body structures of vehicles are constantly being tested for responses to various types impact events.
One object of the present disclosure is to attached a bracket to a side roof rail, a B-pillar and a roof bow with attachments between the bracket and the roof bow being more numerous and stronger than attachments between the side roof rail and the bracket such that the bracket collapses in an area adjacent to the side roof rail in response to side impact events.
In view of the state of the known technology, one aspect of the present disclosure is to provide a vehicle body structure with a side roof rail, a B-pillar and a bracket. The side roof rail has an inboard surface extending in a vehicle longitudinal direction. The B-pillar has an upper end portion that overlays a portion of the inboard surface of the roof rail, the B-pillar extending downward from the roof rail. The bracket has a first portion and a second portion. The first portion is fixedly attached to the upper end portion of the B-pillar. The bracket further has a first rib and a second rib spaced apart from the first rib. The first rib and the second rib extend from the first portion of the bracket upward toward the second portion of the bracket. The first portion of the bracket further defines a slot located between the first rib and the second rib.
Referring now to the attached drawings which form a part of this original disclosure:
Selected embodiments will now be explained with reference to the drawings. It will be apparent to those skilled in the art from this disclosure that the following descriptions of the embodiments are provided for illustration only and not for the purpose of limiting the invention as defined by the appended claims and their equivalents.
Referring initially to
The vehicle 10 includes many conventional features, such as suspension, steering, powertrain, electronic and passenger compartment components. Since these features and components are conventional features, further description is omitted for the sake of brevity.
As shown in
As shown in
The features of the vehicle body structure 12 described herein below are located at intersecting areas 22 of the B-pillars 16 and the roof structure 20. These features are configured to provide predetermined levels of strength and rigidity, and, provide predetermined characteristics in response to an impact event were impact to the vehicle 10 is located proximate one of the B-pillars 16, as described in greater detail below. There are two such intersecting areas 22 of the vehicle body structure 12, as shown in
It should be understood from the drawings and the description herein that the B-pillar 16 is constructed from a plurality of differing panels welded together in a conventional manner. For purposes of understanding the structures within the intersecting areas 22, only the inboard panel 26 is described hereinbelow for the sake of brevity. Similarly, the roof structure 20 includes a plurality of differing conventional panels and structural elements that are connected to one another by, for example, welding techniques and/or mechanical fasteners. However, for purposes of understanding the structures within the intersecting areas 22, only the side roof rail 28 and the roof bow 30 of the roof structure 20 are described hereinbelow for the sake of brevity.
As shown in
The inboard panel 26 of the B-pillar 16 has an upper end 36 that is shaped and dimensioned to fit between the protrusions 34a and 34b and overlay a portion of the inboard surface 34 of the side roof rail 28. The upper end 36 of the inboard panel 26 of the B-pillar 16 is welded to the side roof rail 28 in a conventional manner. As shown in
A description of the bracket 32 is now provided with initial reference to
The first portion 40 is fixedly attached to the upper end 36 (upper end portion) of the B-pillar 16 as shown in
The central portion 41 of the bracket 32 overlays the inboard surface 34 of the side roof rail 28 but has limited connection thereto. The central portion 41 includes first bends 41a (bent or curved sections of the central portion 41) and second bends 41b. One of the first bends 41a and one of the second bends 41b are located on a forward portion of the bracket 32 adjacent to the first rib 44. The others of the first bends 41a and the second bends 41b are located on a rearward portion of the bracket 32 adjacent to the second rib 46.
As shown in
The central portion 41 is welded to the inboard surface 34 of the side roof rail 28 via a single weld W located adjacent a rearward edge of the central portion 41 and the second rib 46 below the first and second bent sections 41a and 41b, as shown in
The second portion 42 of the bracket 32 extends inboard of the side roof rail 28 and has two ribs, a third rib 50 and a fourth rib 52. The third rib 50 and the fourth rib 52 extend in an outboard direction from a distal end of the second portion 42,
The first rib 50 includes a first opening 56 and the second rib 52 includes a second fastener opening 58 that are dimensioned to receive fasteners F1, as described in greater detail below. The first rib 50 also includes a smaller opening 56a that receives an alignment pin P1 (
A description of the roof bow 30 of the roof structure 20 is now provided with reference to
As shown in
When the roof bow 30 is installed to the bracket 32, the rib 60 overlays a portion of the upper surface of the third rib 50 of the second portion 42 of the bracket 32. Similarly, the rib 62 overlays a portion of the upper surface of the fourth rib 52 of the second portion 42 of the bracket 32. As shown in
Hence, the ribs 60 and 62 of the roof bow 30 overlay but do not mate with the ribs 50 and 52 of second portion 42 of the bracket 32.
As is also shown in
Specifically, as shown
There are advantages to this arrangement. The amount of overall deformation of the vehicle body structure 12 can be minimized and be confined to the intersecting area 22 in response to most side impact events. Such an arrangement can limit or minimize, and possibly eliminate any deformation to, for example, the roof structure 20.
The vehicle 10 includes many conventional components that are well known in the art. Since these conventional components are well known in the art, these structures will not be discussed or illustrated in detail herein. Rather, it will be apparent to those skilled in the art from this disclosure that the components can be any type of structure and/or programming that can be used to carry out the present invention.
In understanding the scope of the present invention, the term “comprising” and its derivatives, as used herein, are intended to be open ended terms that specify the presence of the stated features, elements, components, groups, integers, and/or steps, but do not exclude the presence of other unstated features, elements, components, groups, integers and/or steps. The foregoing also applies to words having similar meanings such as the terms, “including”, “having” and their derivatives. Also, the terms “part,” “section,” “portion,” “member” or “element” when used in the singular can have the dual meaning of a single part or a plurality of parts. Also as used herein to describe the above embodiment, the following directional terms “forward”, “rearward”, “above”, “downward”, “vertical”, “horizontal”, “below” and “transverse” as well as any other similar directional terms refer to those directions of a vehicle equipped with the vehicle body structure. Accordingly, these terms, as utilized to describe the present invention should be interpreted relative to a vehicle equipped with the vehicle body structure.
The term “configured” as used herein to describe a component, section or part that is constructed to carry out the desired function.
The terms of degree such as “substantially”, “about” and “approximately” as used herein mean a reasonable amount of deviation of the modified term such that the end result is not significantly changed.
While only selected embodiments have been chosen to illustrate the present invention, it will be apparent to those skilled in the art from this disclosure that various changes and modifications can be made herein without departing from the scope of the invention as defined in the appended claims. For example, the size, shape, location or orientation of the various components can be changed as needed and/or desired. Components that are shown directly connected or contacting each other can have intermediate structures disposed between them. The functions of one element can be performed by two, and vice versa. The structures and functions of one embodiment can be adopted in another embodiment. It is not necessary for all advantages to be present in a particular embodiment at the same time. Every feature which is unique from the prior art, alone or in combination with other features, also should be considered a separate description of further inventions by the applicant, including the structural and/or functional concepts embodied by such features. Thus, the foregoing descriptions of the embodiments according to the present invention are provided for illustration only, and not for the purpose of limiting the invention as defined by the appended claims and their equivalents.
Sakurai, Satoshi, Tejima, Fumio, Fuentes, Bobby, Adachi, Atsushi
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Executed on | Assignor | Assignee | Conveyance | Frame | Reel | Doc |
Feb 20 2019 | FUENTES, BOBBY | NISSAN NORTH AMERICA, INC | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 056966 | /0178 | |
Feb 21 2019 | TEJIMA, FUMIO | NISSAN MOTOR CO , LTD | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 056966 | /0384 | |
Feb 21 2019 | SAKURAI, SATOSHI | NISSAN MOTOR CO , LTD | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 056966 | /0384 | |
Feb 22 2019 | Nissan North America, Inc. | (assignment on the face of the patent) | / | |||
Feb 22 2019 | ADACHI, ATSUSHI | NISSAN MOTOR CO , LTD | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 056966 | /0384 | |
Sep 12 2023 | NISSAN NORTH AMERICA, INC | NISSAN MOTOR CO , LTD | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 065083 | /0338 |
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